CMT2D

GARS1 | 2003

What Is CMT2D?

CMT2D is a type of CMT caused by mutations in the GARS1 gene. This gene provides instructions for producing glycyl-tRNA synthetase, an enzyme involved in protein synthesis that attaches glycine to its cognate transfer RNA. Mutations in the GARS1 gene disrupt normal nerve structure, leading to impaired nerve signal transmission.

CMT2D is autosomal dominant, meaning that just one of the gene’s two copies must have a CMT-causing mutation to cause this subtype.

Clinical Features

The age of symptom onset in CMT2D is variable, ranging from early childhood to adulthood. Symptoms typically begin in the lower extremities and progress over time to involve the upper limbs. An earlier onset isn’t necessarily associated with a more severe disease course. Nerve conduction studies usually show normal motor conduction velocities and reduced amplitudes, consistent with an axonal form of CMT.

CMT2D symptoms may include:

  • Weakness in the feet and lower legs
  • Muscle atrophy
  • Foot drop
  • A steppage-style walking pattern
  • Reduced sensation
  • Reduced or absent reflexes
  • Foot deformities, including high arches and hammertoes (clawed toes)
  • Progressive involvement of the hands and forearms
  • Difficulty with fine motor skills and manual dexterity
  • Balance difficulties
  • Additional symptoms not listed here

Disease Course

CMT2D shows wide variability in severity and progression. Some individuals are mildly affected, while others develop a more severe disease. Disease progression is generally slow, and life expectancy is not reduced.

Clinical Basics

Subtype
CMT2D

Classification
CMT2

Neuropathy Type
Axonal

Inheritance Pattern
autosomal dominant

Genetic Context

HGNC-Approved Gene Symbol
GARS1

Gene Full Name
glycyl-tRNA synthetase 1

HGNC Gene Alias(es)
GARS, GlyRS

Chromosome
7p14.3

Zygosity of Responsible Variant
Heterozygous

Mitochondrial Involvement
No

Variant Mechanism

Toxic Gain of Function (GoF)

Details

Mechanistic basis:
Neomorphic

Confidence:
Medium

Prediction:
The literature predicts a neomorphic gain-of-function mechanism for CMT2D: heterozygous GARS1 missense alleles open the enzyme's conformation and expose surfaces the wild-type synthetase keeps buried, creating interactions it never makes, including inappropriate binding to Nrp1 and to Trk receptors and mislocalization within peripheral axons. Heterozygous Gars1 null mice do not develop CMT, so the dominant phenotype is not a matter of reduced enzyme dose. Whether the toxic species acts chiefly through aberrant receptor engagement or through sequestration of tRNA-Gly remains open, and confidence is graded medium.

Rationale:
These alleles do not lose activity so much as acquire it, opening a conformation that exposes new surfaces and engaging Nrp1 and Trk receptors on motor axons. Severity across the CMT2D alleles tracks that aberrant surface rather than residual aminoacylation, and overexpressed wild-type GARS1 does not rescue, which separates a toxic gain both from reduced enzyme dose and from interference with the normal subunit.

ClinVar Pathogenic Variants

View GARS1 ClinVar Variants

GeneReviews®

CMT2D GeneReviews®

CMT2D OMIM Entry

CMT2D OMIM

GARS1 OMIM Entry

GARS1 OMIM

More Info

CMT2D Research Opportunity

CMT Natural History Study

Original Discovery Publication

Publication Title

Glycyl tRNA Synthetase Mutations in Charcot-Marie-Tooth Disease Type 2D and Distal Spinal Muscular Atrophy Type V

Authors

Antonellis, A., Ellsworth, R. E., Sambuughin, N., Puls, I., Abel, A., Lee-Lin, S. Q., Jordanova, A., Kremensky, I., Christodoulou, K., Middleton, L. T., Sivakumar, K., Ionasescu, V., Funalot, B., Vance, J. M., Goldfarb, L. G., Fischbeck, K. H., & Green, E. D.

Publication Date
May 1, 2003

Updated: May 9, 2026 | By: K. Raymond

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